MID-73H1C UOT | Alldatasheet
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l Low junction capacitance l High cut-off frequency l Fast switching time Absolute Maximum Ratings @ TA=25oC Parameter Maximum Rating Unit Power Dissipation 100 mW Operating Temperature Range Storage Temperature Range Lead Soldering Temperature 02/04/2002 -55oC to +100oC -55oC to +100oC 260oC for 5 seconds Unity Opto Technology Co., Ltd. Notes : 1. Tolerance is ± 0.25 mm (.010") unless otherwise noted. 2. Protruded resin under flange is 1.0 mm (.040") max. 3. Lead spacing is measured where the leads emerge from the package. 2.54 NOM. (.100) SEE NOTE 2 Unit : mm (inches ) 0.50 TYP. (.020) 1.00MIN. (.039) ANODE 5.2±0.12 (.205±.005) 3.05 (.120) 7.5±0.12 (..295 3.00+0.120 (.118±.005) A C RADIANT SENSITIVE AREA 16.00 MIN. (.630) SEE NOTE 3
Optical-Electrical Characteristics @ TA=25oC Parameter Test Conditions Symbol Min. Typ. Max. Unit IR=0.1mA Ee=0 VR=10V Ee=0 λ=850nm Ee=0.1mW/cm2 Rise Time VR =10V λ=850nm Tr 50 Fall Time RL=50Ω Tf 50 VR =5V, λ=850nm Ee=0.1mW/cm2 VR =3V, f=1MHZ Ee=0 Typical Optical-Electrical Characteristic Curves 02/04/2002 Total Capacitance CT 25 Light Current IL 9 Open Circuit Voltage VOC 350 Reverse Dark Current ID Reverse Breakdown Voltage V(BR)R 30 30 nA V mV pF nsec µA Unity Opto Technology Co., Ltd. 0.1 100 1000 0 20 40 60 80 100 Ambient Temperature - oC FIG.4 DARK CURRENT VS AMBIENT TEMPERATURE VR=10, Ee=0 mw/cm2 100 150 200 0 20 40 60 80 100 Ambient Temperature -oC FIG.3 TOTAL POWER DISSIPATION VS. AMBIENT TEMPERATURE 1000 2000 3000 4000 0 5 10 15 20 Reverse Volatage - VR FIG.1 DARK CURRENT VS REVERSE VOLTAGE TEMP=25oC , Ee=0 mW/cm2 Reverse Voltage- VR FIG.2 CAPACITANCE VS. REVERSE VOLTAGE F=1MHZ, Ee=0mW/cm2 Capacitance C - pF 100 0.01 0.1 1 10 100 Dark Current IR - pATotal Power Dissipation mW Dark Current IR - nA
Typical Optical-Electrical Characteristic Curves 02/04/2002 Unity Opto Technology Co., Ltd. 100 700 800 900 1000 1100 1200 Relative Spectral Sensitivity Wavelength-nm FIG.5 RELATIVE SPECTRAL SENSITIVITY VS. WAVELENGTH Photocurrnet Ip - µA 0.01 0. 1 1 10 Irradiance Ee (mW/cm2) FIG.6 PHOTOCURRENT VS. IRRADIANCE = 850 nm 0.1 100 1000 FIG.7 SENSITIVITY DIAGRAM Relative Sensitivity 1.0 0.9 0.8 0° 10° 20° 90° 70° 60° 50° 80° 30° 40°